buf = (u64 *) per_cpu_ptr(crash_notes, cpu);
if (!buf)
return;
- buf = append_elf_note(buf, "CORE", NT_PRSTATUS, prstatus,
+ buf = append_elf_note(buf, KEXEC_CORE_NOTE_NAME, NT_PRSTATUS, prstatus,
sizeof(*prstatus));
final_note(buf);
}
#ifndef __ASSEMBLY__
-#define MAX_NOTE_BYTES 1024
-
struct kimage;
/* Provide a dummy definition to avoid build failures. */
static inline void crash_setup_regs(struct pt_regs *newregs,
/* We can also handle crash dumps from 64 bit kernel. */
#define vmcore_elf_check_arch_cross(x) ((x)->e_machine == EM_X86_64)
-#define MAX_NOTE_BYTES 1024
-
/* CPU does not save ss and esp on stack if execution is already
* running in kernel mode at the time of NMI occurrence. This code
* fixes it.
/* The native architecture */
#define KEXEC_ARCH KEXEC_ARCH_IA_64
-#define MAX_NOTE_BYTES 1024
-
#define kexec_flush_icache_page(page) do { \
unsigned long page_addr = (unsigned long)page_address(page); \
flush_icache_range(page_addr, page_addr + PAGE_SIZE); \
/* The native architecture */
#define KEXEC_ARCH KEXEC_ARCH_MIPS
-#define MAX_NOTE_BYTES 1024
-
static inline void crash_setup_regs(struct pt_regs *newregs,
struct pt_regs *oldregs)
{
struct pt_regs *oldregs) { }
#endif /* !__powerpc64 __ */
-#define MAX_NOTE_BYTES 1024
-
extern void kexec_smp_wait(void); /* get and clear naca physid, wait for
master to copy new code to 0 */
extern int crashing_cpu;
/* The native architecture */
#define KEXEC_ARCH KEXEC_ARCH_S390
-#define MAX_NOTE_BYTES 1024
-
/* Provide a dummy definition to avoid build failures. */
static inline void crash_setup_regs(struct pt_regs *newregs,
struct pt_regs *oldregs) { }
/* The native architecture */
#define KEXEC_ARCH KEXEC_ARCH_SH
-#define MAX_NOTE_BYTES 1024
-
static inline void crash_setup_regs(struct pt_regs *newregs,
struct pt_regs *oldregs)
{
/* The native architecture */
#define KEXEC_ARCH KEXEC_ARCH_X86_64
-#define MAX_NOTE_BYTES 1024
-
/*
* Saving the registers of the cpu on which panic occured in
* crash_kexec to save a valid sp. The registers of other cpus
#include <linux/linkage.h>
#include <linux/compat.h>
#include <linux/ioport.h>
+#include <linux/elfcore.h>
+#include <linux/elf.h>
#include <asm/kexec.h>
/* Verify architecture specific macros are defined */
#error KEXEC_ARCH not defined
#endif
+#define KEXEC_NOTE_HEAD_BYTES ALIGN(sizeof(struct elf_note), 4)
+#define KEXEC_CORE_NOTE_NAME "CORE"
+#define KEXEC_CORE_NOTE_NAME_BYTES ALIGN(sizeof(KEXEC_CORE_NOTE_NAME), 4)
+#define KEXEC_CORE_NOTE_DESC_BYTES ALIGN(sizeof(struct elf_prstatus), 4)
+/*
+ * The per-cpu notes area is a list of notes terminated by a "NULL"
+ * note header. For kdump, the code in vmcore.c runs in the context
+ * of the second kernel to combine them into one note.
+ */
+#define KEXEC_NOTE_BYTES ( (KEXEC_NOTE_HEAD_BYTES * 2) + \
+ KEXEC_CORE_NOTE_NAME_BYTES + \
+ KEXEC_CORE_NOTE_DESC_BYTES )
+
/*
* This structure is used to hold the arguments that are used when loading
* kernel binaries.
/* Location of a reserved region to hold the crash kernel.
*/
extern struct resource crashk_res;
-typedef u32 note_buf_t[MAX_NOTE_BYTES/4];
+typedef u32 note_buf_t[KEXEC_NOTE_BYTES/4];
extern note_buf_t *crash_notes;
memset(&prstatus, 0, sizeof(prstatus));
prstatus.pr_pid = current->pid;
elf_core_copy_regs(&prstatus.pr_reg, regs);
- buf = append_elf_note(buf, "CORE", NT_PRSTATUS, &prstatus,
- sizeof(prstatus));
+ buf = append_elf_note(buf, KEXEC_CORE_NOTE_NAME, NT_PRSTATUS,
+ &prstatus, sizeof(prstatus));
final_note(buf);
}